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首页> 外文期刊>Journal of Physics. Condensed Matter >The origin of the compressibility anomaly in amorphous silica: a molecular dynamics study
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The origin of the compressibility anomaly in amorphous silica: a molecular dynamics study

机译:无定形二氧化硅中可压缩性异常的起源:分子动力学研究

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摘要

We propose an explanation for the anomalous compressibility maximum in amorphous silica based on rigidity arguments. The model considers the fact that a network structure will be rigidly compressed in the high-pressure limit, and rigidly taut in the negative pressure limit, but flexible and hence softer at intermediate pressures. We validate the plausibility of this explanation by the analysis of molecular dynamics simulations. In fact this model is quite general, and will apply to any network solid, crystalline or amorphous; there are experimental indications that support this prediction. In contrast to other ideas concerning the compressibility maximum in amorphous silica, the model presented here does not invoke the existence of polyamorphic phase transitions in the glass phase.
机译:我们基于刚度论证提出了对非晶态二氧化硅最大可压缩性的解释。该模型考虑了以下事实:网络结构在高压极限下将被刚性压缩,而在负压极限下将被刚性拉紧,但在中间压力下会变软并因此变软。我们通过分析分子动力学模拟来验证这种解释的合理性。实际上,该模型相当笼统,将适用于任何固体,晶体或无定形网络。有实验证据支持这一预测。与其他有关无定形二氧化硅中最大可压缩性的想法相反,此处介绍的模型没有引用玻璃相中多非晶相变的存在。

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